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Structure of the subsurface counter current beneath the Tsushima warm current simulated by an ocean general circulation model

机译:海洋总环流模型模拟的对马暖流下的地下逆流结构

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The subsurface counter current beneath the Tsushima Warm Current is simulated using a three-dimensional circulation model. The model well reproduces the counter current beneath the Tsushima Warm Current on the shelf break. The counter current appears as nearshore parts of the subsurface clockwise circulations from spring to early winter. The clockwise circulations are separated by developed shelves such as the Oki Spur and the Noto Peninsula, thus the counter current is not a continuous flow along the Japanese coast in this model. The vertical structure of the counter current can be explained by a density structure with the thermal wind relationship. The permanent and seasonal pycnoclines form mutually opposite horizontal density gradients near the Japanese coast in summer. Such a density structure results in a speed maximum of the counter current away from the bottom. It is remarkable that the second baroclinic mode is dominant in nearshore parts of the subsurface clockwise circulations in summer, which are attributed to the density structure. Similar density structures are also found in some coastal regions of the world oceans where subsurface counter currents are expected.
机译:对马暖流下方的地下逆流使用三维循环模型进行模拟。该模型很好地再现了货架中断时对马暖流下方的逆流。从春季到初冬,逆流表现为地下顺时针环流的近岸部分。顺时针环流由发达的冲积层(如冲冲刺和诺托半岛)隔开,因此,在该模型中,逆流不是沿着日本海岸的连续流动。逆流的垂直结构可以通过具有热风关系的密度结构来解释。夏季,永久和季节性的比索线在日本海岸附近形成相互相反的水平密度梯度。这种密度结构导致逆流的最大速度远离底部。值得注意的是,第二个斜压模式在夏季的地下顺时针环流的近岸部分占主导地位,这归因于密度结构。在世界海洋的一些预计会发生地下逆流的沿海地区,也发现了类似的密度结构。

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